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Monitoring Mechanical Motion of Carbon Nanotube based Nanomotor by Optical Absorption Spectrum

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arxiv 1610.07156 v1 pith:4KLBB2GA submitted 2016-10-23 cond-mat.mes-hall physics.optics

Monitoring Mechanical Motion of Carbon Nanotube based Nanomotor by Optical Absorption Spectrum

classification cond-mat.mes-hall physics.optics
keywords absorptioncarbonnanomotoropticalspectrumdouble-wallmechanicalnanotube
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The optical absorption spectrums of nanomotors made from double-wall carbon nanotubes have been calculated with the time-dependent density functional based tight binding method. When the outer short tube of the nanomotor moves along or rotates around the inner long tube, the peaks in the spectrum will gradually evolve and may shift periodically, the amplitude of which can be as large as hundreds of meV. We show that the features and behaviors of the optical absorption spectrum could be used to monitor the mechanical motions of the double-wall carbon nanotube based nanomotor.

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